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Updated: Oct 5, 2025

Phenotypic Characterization of Macrophages from Rat Kidney by Flow Cytometry
Published on: October 18, 2016
Chronic kidney disease mediates cardiac dysfunction associated with increased resident cardiac macrophages
M A Mawhin1, R G Bright2, J D Fourre3
1Centre for Inflammatory Disease, Department of Immunology and Inflammation, Imperial College London, London, UK. m.mawhin@imperial.ac.uk.
Insights
Macrophages expand in the heart during chronic kidney disease (CKD), driven by CXCL10. This innate immune response contributes to uremic cardiomyopathy, offering new therapeutic insights.
Area of Science:
- Immunology
- Cardiovascular Medicine
- Nephrology
Background:
- Cardiovascular disease is the primary cause of death in end-stage kidney disease.
- Macrophages are implicated in chronic kidney disease (CKD) and heart failure, but their role in cardiorenal syndrome is unclear.
- This study investigates the role of macrophages in uremic cardiac disease.
Purpose of the Study:
- To elucidate the role of macrophages in the development of uremic cardiomyopathy.
- To identify key molecular mechanisms driving cardiac macrophage accumulation in CKD.
- To explore the translational relevance of these findings in human CKD patients.
Main Methods:
- Utilized two experimental models of CKD to assess cardiac response.
- Investigated macrophage and chemokine involvement using monocytopenic CCR2-/- mice and anti-CXCL10 treatment.
- Quantified CXCL10 in human CKD plasma and assessed responses of human iPSC-derived cardiomyocytes and cardiac fibroblasts to CKD serum.
Main Results:
- Reduced kidney function led to cardiac macrophage expansion, primarily via local proliferation.
- Circulating monocyte influx also contributed to increased cardiac macrophages.
- CXCL10 was identified as a critical factor for cardiac macrophage expansion in uremic disease.
- Elevated plasma CXCL10 concentrations were observed in advanced human CKD.
- Cardiomyocytes and cardiac fibroblasts were identified as sources of CXCL10 in humans.
Conclusions:
- This research provides novel insights into the innate immune system's function in uremic cardiomyopathy.
- CXCL10 signaling is a key pathway mediating cardiac macrophage accumulation in CKD.
- Findings highlight potential therapeutic targets for managing cardiorenal syndrome.
Background:
The leading cause of death in end-stage kidney disease is related to cardiovascular disease. Macrophages are known to be involved in both chronic kidney disease (CKD) and heart failure, however their role in the development of cardiorenal syndrome is less clear. We thus sought to investigate the role of macrophages in uremic cardiac disease.
Methods:
We assessed cardiac response in two experimental models of CKD and tested macrophage and chemokine implication in monocytopenic CCR2-/- and anti-CXCL10 treated mice. We quantified CXCL10 in human CKD plasma and tested the response of human iPSC-derived cardiomyocytes and primary cardiac fibroblasts to serum from CKD donors.
Results:
We found that reduced kidney function resulted in the expansion of cardiac macrophages, in particular through local proliferation of resident populations. Influx of circulating monocytes contributed to this increase. We identified CXCL10 as a crucial factor for cardiac macrophage expansion in uremic disease. In humans, we found increased plasma CXCL10 concentrations in advanced CKD, and identified the production of CXCL10 in cardiomyocytes and cardiac fibroblasts.
Conclusions:
This study provides new insight into the role of the innate immune system in uremic cardiomyopathy.
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